arXiv · 2207.01307
Impact of 3D curvature on the polarization orientation in non-Ising domain walls
Abstract
Ferroelectric domain boundaries are quasi-two-dimensional functional interfaces with high prospects for nanoelectronic applications. Despite their reduced dimensionality, they can exhibit complex non-Ising polarization configurations and unexpected physical properties. Here, the impact of the three-dimensional (3D) curvature on the polarization profile of nominally uncharged 180{\deg} domain walls in LiNbO3 is studied using second-harmonic generation microscopy and 3D polarimetry analysis. Correlations between the domain wall curvature and the variation of its internal polarization unfold in the form of modulations of the N\'eel-like character, which we attribute to the flexoelectric effect. While the N\'eel-like character originates mainly from the tilting of the domain wall, the internal polarization adjusts its orientation due to the synergetic upshot of dipolar and monopolar bound charges and their variation with the 3D curvature. Our results show that curved interfaces in solid crystals may offer a rich playground for tailoring nanoscale polar states.
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Ulises Acevedo-Salas, Boris Croes, Yide Zhang, Olivier Cregut, Kokou Dodzi Dorkenoo, Benjamin Kirbus, Ekta Singh, Henrik Beccard, Michael Rüsing, Lukas M. Eng, Riccardo Hertel, Eugene A. Eliseev, Anna N. Morozovska, Salia Cherifi-Hertel. 2022-07-04. Impact of 3D curvature on the polarization orientation in non-Ising domain walls. https://doi.org/10.1021/acs.nanolett.2c03579
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